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Evaluation of a New Liquid Breaker for Polymer Based In-Situ Gelled Acids

机译:用于聚合物基原位胶凝酸的新型液体破胶剂的评估

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摘要

A solid breaker is used to reduce the viscosity of the gel at pH range of 4-5 for in-situ gelled acids with Zr4 cross-linkers utilize. However, the literature survey confirmed that solid breakers caused a premature reduction in the fluid viscosity resulting in a less than desirable productivity. Therefore, an effective liquid breaker that is based on tetrafluoroboric acid was developed. This study was conducted to evaluate this new breaker system under the following conditions: breaker concentration (0-200 ppm), and acid injection rate (0.5-10 cm3/min). The major findings from the performed viscosity measurements and single coreflood experiments can be summarized as follows: the crosslinking of the polymer occurred at a pH value of 1.8. At a pH of less than 2, doubling the breaker concentration did not affect the viscosity of the acid. However, at a pH of greater than 2, the viscosity of acid was reduced by 30 percent. At a breaker concentration of 0 ppm, the appearance of Zr in the core effluent sample was delayed by 0.25 PV compared to the reaction product, while at 100 ppm, Zr was delayed by 0.75 PV. At 200 ppm breaker, no Zr ions were detected in the effluent samples. Additionally, it was observed that as the breaker concentration increased, more Zr remained inside the core, as ZrF4, which is water-insoluble. Increasing the breaker concentration from 100 to 200 ppm reduced the final normalized pressure drop by 50 percent at injection rate of 2.5 cm3/min. Permeability reduction due to gel was reduced by increasing the acid injection rate.
机译:对于使用Zr4交联剂的原位胶凝酸,可使用固体破胶剂降低pH在4-5范围内的凝胶粘度。但是,文献调查证实,固体破胶剂会导致流体粘度过早降低,从而导致生产率下降。因此,开发了基于四氟硼酸的有效的液体破胶剂。在以下条件下进行了此项研究,以评估这种新型破碎机系统:破碎机浓度(0-200 ppm)和酸注入速率(0.5-10 cm3 / min)。从进行的粘度测量和单次岩心驱油实验得出的主要发现可以归纳如下:聚合物的交联发生在pH值为1.8的情况下。在小于2的pH值下,将破乳剂浓度加倍不会影响酸的粘度。但是,在pH大于2时,酸的粘度降低了30%。在破胶剂浓度为0 ppm时,与反应产物相比,核心流出物样品中Zr的出现延迟了0.25 PV,而在100 ppm时,Zr的延迟出现了0.75 PV。破乳剂浓度为200 ppm时,在废水样品中未检测到Zr离子。另外,观察到,随着破胶剂浓度的增加,更多的Zr保留为不溶于水的ZrF4,即在内核内部。在2.5 cm3 / min的注入速度下,将破胶剂的浓度从100 ppm增加到200 ppm可使最终归一化压降降低了50%。通过增加酸注入速率,减少了由于凝胶引起的渗透性降低。

著录项

  • 作者

    Aksoy Gamze;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 en_US
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